China 5.5kw 50L/S Dry Oil Free Claw Vacuum Pump for Chemicals manufacturer

Product Description

Solution Description

DCP Vertical Dry Claw Vacuum Pump: 

DCP Vacuum Pump is a large cost-powerful environmental protection vacuum pump by self-dependent innovation and build,which foundation on numerous foreign vacuum pump.

Doing work Principle:

Dry Claw Vacuum Pump is variable volume vacuum pump, pumping vacuum by quantity modify from large to little, and tiny to huge. When rotors locate at the initial place, S chamber quantity get modest, start off suction air. When rotors start off reverse operating, S chamber get even bigger, T chamber more compact. With rotors’ running, S chamber get big, suction a lot more and more air. T chamber get modest, link outlet gap, start off exhaust. Rotors’ operating make T chamber get modest, fuel get maximum compression.S chamber get most significant, suction air get conclude.The vacuum space consist of 2 claw rotors and pump human body get smaller and samller with driving by synchronous gear, gas exhaust and enter following stage,then yet another stage,still finall stage, or environment, entrance stop create high vacuum. 

Apps:

Petroleum Sector: distilling, diminished strain evaporating, vacuum drying, negative strain concentrating, oil vapor restoration, adsorbtion/desorption, bio-gasoline, inflammable fuel, corrosive gas, chemical response absorption etc.

Prescription drugs Industry: crystallizing, distilling, subliming, drying, vacreation, polymerization, vacuum evaporation, adverse stress filtration, monomer restoration, adsorbtion/desorption, material conveying, corrosive medium, ethylene oxide disinfection etc.

Foodstuff Sector: subliming, drying, dewatering, vacuum evaporation, vacuum preservation, vacuum paskage and many others.

Aeronautics & Astronautics: braze welding, vacuum coating, electron beam welding, wind tunnel check, place setting simulation etc.

Analysis Institutes: rotary evaporateion, distilling, rectification, polymerization, unfavorable strain extraction filtration, vacuum drying, pilot-plant, wind tunnel test, vacuum setting simulation etc.
 

Item Parameters

Design DCP50 DCP70 DCP110 DCP150 DCP200
Pumping Pace(L/S) fifty 70 one hundred ten a hundred and fifty two hundred
Max Vacuum(Pa) 50
Motor Power(Kw/Hp) five.5/7.five 7.5/10 11/fifteen eighteen.5/twenty five 22/thirty
Rotating Velocity(RPM) 3000
Functioning Voltage(V/HZ/P) 220-460/50/3 or 220-460/sixty/three
Structure Vertical
Inlet Hole DN80 DN100
Outlet Gap DN50 DN80
Cooling Strategy Water Cooled
Sounds(dB) 78 80
Dimension(LxWxH,MM) 850x700x1466 850x700x1645 850x700x1684 850x700x1772 850x700x1836
Remark:
1L/S=3.6m3/h,1L/S=2.119CFM.
1Pa=.01mbar,1Pa=.001Kpa, 1Pa=.0075Torr, 1Pa=.000145PSI,1Pa=.00001Bar.

 

Our Positive aspects

1. Large final vacuum, match with unit, can get greater vacuum degree,
two. Reduced electricity intake, entirely commence under atmospheric circumstances,
3. More powerful adaptation, can pumping contain considerably less dust and corrosive gas,
four. Very good environmental safety, no industrial waster drinking water,lower environmental safety price.
five. Very good seal, employing magnetic push seal, which can pumping radioactive compound,
6. Higher safety, contactless interior layout, no friction,
7. Lower sustain cost, with an common of 20,000 hours of problems-free function,
8. Compact construction, small size, simple to set up, 9. Solvent recovery, organic solvent recovery, optimum economic value, lessen emissions.

 

Exhibition

 

Venture Scenario

 

FAQ

Q1: If I want to inquiry, what can I need to have to offer?
A1: Make sure you tell us your Doing work Vacuum Degree(Pa,mbar or torr), Flowrate(L/S or M3/H) and Use.

Q2: Do you have MOQ?
A2: 1Pcs is ok,if you have more quantity, the price tag will be cut down.

Q3: How extended to shipping?
A3: We require about 4-5 weeks to create,then additional need about 5-7 days to prepare domestic delivery and port clearence.

This autumn: What is your payment time period?
A4: fifty% for prepayment, then the equilibrium should compensated before shipping, by TT.

Q5: How prolonged for the guarantee?
A5: 1 12 months for whole machine, the successful date of warranty must be counted from 1 month the goods arrived in client’s web site. If the pump go incorrect, the shopper can pick back again the pump to manufacturing facility repair,or we offer you remote complex help.

After-sales Service: Remote Support
Warranty: 1 Year
Oil or Not: Oil Free
Structure: Claw Vacuum Pump
Exhauster Method: Negative Pressure Air Pump
Vacuum Degree: High Vacuum

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Customization:

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Model DCP50 DCP70 DCP110 DCP150 DCP200
Pumping Speed(L/S) 50 70 110 150 200
Max Vacuum(Pa) 50
Motor Power(Kw/Hp) 5.5/7.5 7.5/10 11/15 18.5/25 22/30
Rotating Speed(RPM) 3000
Working Voltage(V/HZ/P) 220-460/50/3 or 220-460/60/3
Structure Vertical
Inlet Hole DN80 DN100
Outlet Hole DN50 DN80
Cooling Method Water Cooled
Noise(dB) 78 80
Dimension(LxWxH,MM) 850x700x1466 850x700x1645 850x700x1684 850x700x1772 850x700x1836
Remark:
1L/S=3.6m3/h,1L/S=2.119CFM.
1Pa=0.01mbar,1Pa=0.001Kpa, 1Pa=0.0075Torr, 1Pa=0.000145PSI,1Pa=0.00001Bar.
After-sales Service: Remote Support
Warranty: 1 Year
Oil or Not: Oil Free
Structure: Claw Vacuum Pump
Exhauster Method: Negative Pressure Air Pump
Vacuum Degree: High Vacuum

###

Customization:

###

Model DCP50 DCP70 DCP110 DCP150 DCP200
Pumping Speed(L/S) 50 70 110 150 200
Max Vacuum(Pa) 50
Motor Power(Kw/Hp) 5.5/7.5 7.5/10 11/15 18.5/25 22/30
Rotating Speed(RPM) 3000
Working Voltage(V/HZ/P) 220-460/50/3 or 220-460/60/3
Structure Vertical
Inlet Hole DN80 DN100
Outlet Hole DN50 DN80
Cooling Method Water Cooled
Noise(dB) 78 80
Dimension(LxWxH,MM) 850x700x1466 850x700x1645 850x700x1684 850x700x1772 850x700x1836
Remark:
1L/S=3.6m3/h,1L/S=2.119CFM.
1Pa=0.01mbar,1Pa=0.001Kpa, 1Pa=0.0075Torr, 1Pa=0.000145PSI,1Pa=0.00001Bar.

Types of vacuum pumps

A vacuum pump is a device that draws gas molecules from a sealed volume and leaves a partial vacuum in its wake. Its job is to create a relative vacuum within a specific volume or volume. There are many types of vacuum pumps, including centrifugal, screw and diaphragm.
Vacuum Pump

Forward centrifugal pump

Positive displacement centrifugal vacuum pumps are one of the most commonly used pump types in the oil and gas industry. Their efficiency is limited to a range of materials and can handle relatively high solids concentrations. However, using these pumps has some advantages over other types of pumps.
Positive displacement pumps have an enlarged cavity on the suction side and a reduced cavity on the discharge side. This makes them ideal for applications involving high viscosity fluids and high pressures. Their design makes it possible to precisely measure and control the amount of liquid pumped. Positive displacement pumps are also ideal for applications requiring precise metering.
Positive displacement pumps are superior to centrifugal pumps in several ways. They can handle higher viscosity materials than centrifuges. These pumps also operate at lower speeds than centrifugal pumps, which makes them more suitable for certain applications. Positive displacement pumps are also less prone to wear.
Positive displacement vacuum pumps operate by drawing fluid into a chamber and expanding it to a larger volume, then venting it to the atmosphere. This process happens several times per second. When maximum expansion is reached, the intake valve closes, the exhaust valve opens, and fluid is ejected. Positive displacement vacuum pumps are highly efficient and commonly used in many industries.

Self-priming centrifugal pump

Self-priming centrifugal pumps are designed with a water reservoir to help remove air from the pump. This water is then recirculated throughout the pump, allowing the pump to run without air. The water reservoir can be located above or in front of the impeller. The pump can then reserve water for the initial start.
The casing of the pump contains an increasingly larger channel forming a cavity retainer and semi-double volute. When water enters the pump through channel A, it flows back to the impeller through channels B-C. When the pump is started a second time, the water in the pump body will be recirculated back through the impeller. This recycling process happens automatically.
These pumps are available in a variety of models and materials. They feature special stainless steel castings that are corrosion and wear-resistant. They can be used in high-pressure applications and their design eliminates the need for inlet check valves and intermediate valves. They can also be equipped with long intake pipes, which do not require activation.
Self-priming centrifugal pumps are designed to run on their own, but there are some limitations. They cannot operate without a liquid source. A foot valve or external liquid source can help you start the self-priming pump.

Screw Pump

The mechanical and thermal characteristics of a screw vacuum pump are critical to its operation. They feature a small gap between the rotor and stator to minimize backflow and thermal growth. Temperature is a key factor in their performance, so they have an internal cooling system that uses water that circulates through the pump’s stator channels. The pump is equipped with a thermostatically controlled valve to regulate the water flow. Also includes a thermostatic switch for thermal control.
Screw vacuum pumps work by trapping gas in the space between the rotor and the housing. The gas is then moved to the exhaust port, where it is expelled at atmospheric pressure. The tapered discharge end of the screw further reduces the volume of gas trapped in the chamber. These two factors allow the pump to work efficiently and safely.
Screw vacuum pumps are designed for a variety of applications. In some applications, the pump needs to operate at very low pressures, such as when pumping large volumes of air. For this application, the SCREWLINE SP pump is ideal. Their low discharge temperature and direct pumping path ensure industrial process uptime. These pumps also feature non-contact shaft seals to reduce mechanical wear. Additionally, they feature a special cantilever bearing arrangement to eliminate potential sources of bearing failure and lubrication contamination.
Screw vacuum pumps use an air-cooled screw to generate a vacuum. They are compact, and clean, and have a remote monitoring system with built-in intelligence. By using the app, users can monitor pump performance remotely.
Vacuum Pump

Diaphragm Pump

Diaphragm vacuum pumps are one of the most common types of vacuum pumps found in laboratories and manufacturing facilities. The diaphragm is an elastomeric membrane held in place around the outer diameter. While it is not possible to seal a diaphragm vacuum pump, there are ways to alleviate the problems associated with this design.
Diaphragm vacuum pumps are versatile and can be used in a variety of clean vacuum applications. These pumps are commercially available with a built-in valve system, but they can also be modified to include one. Because diaphragm pumps are so versatile, it’s important to choose the right type for the job. Understanding how pumps work will help you match the right pump to the right application.
Diaphragm vacuum pumps offer a wide range of advantages, including an extremely long service life. Most diaphragm pumps can last up to ten thousand hours. However, they may be inefficient for processes that require deep vacuum, in which case alternative technologies may be required. Additionally, due to the physics of diaphragm pumps, the size of these pumps may be limited. Also, they are not suitable for high-speed pumping.
Diaphragm vacuum pumps are a versatile subset of laboratory pumps. They are popular for their oil-free construction and low maintenance operation. They are available in a variety of styles and have many optional features. In addition to low maintenance operation, they are chemically resistant and can be used with a variety of sample types. However, diaphragm pumps tend to have lower displacements than other vacuum pumps.

Atmospheric pressure is a key factor in a vacuum pump system

Atmospheric pressure is the pressure created by the collision of air molecules. The more they collide, the greater the pressure. This applies to pure gases and mixtures. When you measure atmospheric pressure, the pressure gauge reads about 14.7 psia. The higher the pressure, the greater the force on the gas molecules.
The gas entering the vacuum pump system is below atmospheric pressure and may contain entrained liquids. The mechanism of this process can be explained by molecular kinetic energy theory. The theory assumes that gas molecules in the atmosphere have high velocities. The resulting gas molecules will then start moving in random directions, colliding with each other and creating pressure on the walls of the vacuum vessel.
Atmospheric pressure is a critical factor in a vacuum pump system. A vacuum pump system is useless without proper atmospheric pressure measurement. The pressure in the atmosphere is the total pressure of all gases, including nitrogen and oxygen. Using total pressure instead of partial pressure can cause problems. The thermal conductivity of various gases varies widely, so working at full pressure can be dangerous.
When choosing a vacuum pump, consider its operating range. Some pumps operate at low atmospheric pressure, while others are designed to operate at high or ultra-high pressure. Different types of pumps employ different technologies that enhance their unique advantages.
Vacuum Pump

The screw pump is less efficient in pumping gases with smaller molecular weight

Vacuuming requires a high-quality pump. This type of pump must be able to pump gas of high purity and very low pressure. Screw pumps can be used in laboratory applications and are more efficient when pumping small molecular weight gases. Chemical resistance is critical to pump life. Chemical resistant materials are also available. Chemically resistant wetted materials minimize wear.
Gear pumps are more efficient than screw pumps, but are less efficient when pumping lower molecular weight gases. Gear pumps also require a larger motor to achieve the same pumping capacity. Compared to gear pumps, progressive cavity pumps also have lower noise levels and longer service life. In addition, gear pumps have a large footprint and are not suitable for tight spaces.
Progressive cavity pumps have two or three screws and a housing and side cover. They are also equipped with gears and bearings. Their mechanical design allows them to operate in high pressure environments with extremely low noise. The progressive cavity pump is a versatile pump that can be used in a variety of applications.
Dry screw compressors have different aspect ratios and can operate at high and low pressures. The maximum allowable differential pressure for screw compressors ranges from 0.4 MPa for 3/5 rotors to 1.5 MPa for 4/6 rotors. These numbers need to be determined on a case-by-case basis.

China 5.5kw 50L/S Dry Oil Free Claw Vacuum Pump for Chemicals     manufacturer China 5.5kw 50L/S Dry Oil Free Claw Vacuum Pump for Chemicals     manufacturer
editor by czh 2023-01-14